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Cadmium effects on some energy metabolism variables in Cnesterodon decemmaculatus adults

机译:镉对Cnesterodon decemmaculatus成虫某些能量代谢变量的影响

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Abstract This work is focused on the responses of some energy metabolism variables in Cnesterodon decemmaculatus adults exposed to cadmium under controlled laboratory conditions. This species has been used as bioindicator for evaluating the effects of different chemicals on diverse biological processes and is frequently used as test organism in ecotoxicity studies that include cadmium as reference toxicant. Animals were exposed for 12 days to the following concentrations: 0, 0.45, and 0.8?mg?Cd/L. Food intake, fecal production, specific assimilation, condition factor, mortality percentage, oxygen consumption, oxygen extraction efficiency, specific metabolic rate, ammonia excretion, and ammonia quotient were measured. The overall balance was expressed as scope for growth (SFG). Cadmium-exposed groups showed a significant decrease in food assimilation and condition factor at the end of the exposure. There was an increase in specific metabolic rate and a decrease in SFG in the group exposed to 0.8?mg?Cd/L. The condition factor and the SFG appeared as sensitive biomarkers of health status and growth of the animals, respectively. Cadmium-exposed fish reduced food intake, which was reflected in a decreased assimilation with concomitant decline in the external energy supply from feeding. Our results highlight the importance of considering the metabolic status of the test organisms when analyzing the responses of the biomarkers usually used as effect parameters in ecotoxicological evaluations under experimental conditions. >
机译:摘要 本研究重点研究了在受控实验室条件下暴露于镉的Cnesterodon decemmaculatus成虫中一些能量代谢变量的响应。该物种已被用作评估不同化学品对不同生物过程影响的生物指示剂,并经常被用作包括镉作为参考毒物在内的生态毒性研究中的测试生物。将动物暴露于以下浓度下12天:0、0.45和0.8?mg?Cd/L. 测量食物摄入量、粪便产生量、比同化、条件因子、死亡率、耗氧量、取氧效率、比代谢率、氨排泄量和氨商。总体余额表示为增长空间(SFG)。镉暴露组在暴露结束时表现出食物同化和条件因子的显着降低。暴露于0.8?mg?镉/升。条件因子和SFG分别是动物健康状况和生长的敏感生物标志物。暴露于镉的鱼类减少了食物摄入量,这反映在同化减少,同时饲料的外部能量供应减少。我们的研究结果强调了在分析实验条件下通常用作生态毒理学评估中效应参数的生物标志物的反应时考虑测试生物体代谢状态的重要性。]]>

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